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Dynamic Insights into the Growth Mechanisms of 2D Covalent Organic Frameworks on Graphene Surfaces

  • Weizhe Hao
  • , Chao Sui*
  • , Gong Cheng
  • , Junjiao Li
  • , Linlin Miao
  • , Guoxin Zhao
  • , Yuna Sang
  • , Jiaxuan Li
  • , Chenxi Zhao
  • , Yichen Zhou
  • , Zifu Zang
  • , Yushun Zhao*
  • , Xiaodong He
  • , Chao Wang*
  • *Corresponding author for this work
  • School of Astronautics, Harbin Institute of Technology
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Producing high-quality two-dimensional (2D) covalent organic frameworks (COFs) is crucial for industrial applications. However, this remains significantly challenging with current synthetic techniques. A deep understanding of the intermolecular interactions, reaction temperature, and oligomers is essential to facilitate the growth of highly crystalline COF films. Herein, molecular dynamics simulations were employed to explore the growth of 2D COFs from monomer assemblies on graphene. Our results showed that chain growth reactions dominated the COF surface growth and that van der Waals (vdW) interactions were important in enhancing the crystallinity through monomer preorganization. Moreover, appropriately tuning the reaction temperature improved the COF crystallinity and minimized the effects of amorphous oligomers. Additionally, the strength of the interface between the COF and the graphene substrate indicated that the adhesion force was proportional to the crystallinity of the COF. This work reveals the mechanisms for nucleation and growth of COFs on surfaces and provides theoretical guidance for fabricating high-quality 2D polymer-based crystalline nanomaterials.

Original languageEnglish
Pages (from-to)10485-10494
Number of pages10
JournalACS Nano
Volume18
Issue number15
DOIs
StatePublished - 16 Apr 2024

Keywords

  • 2D COF
  • MD simulation
  • crystallinity
  • growth mechanisms
  • preorganization

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